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Treatment Avenues in Myalgic Encephalomyelitis/Chronic Fatigue Syndrome: A Split-gender Pharmacogenomic Study of
Mary G Jeffrey1, Lubov Nathanson2, Kristina Aenlle3
1Institute for Neuro-Immune Medicine, Nova Southeastern University, Ft. Lauderdale, FL, USA; College of Psychology, Nova Southeastern University, Ft. Lauderdale, FL, USA.
Purpose:
Myalgic encephalomyelitis/chronic fatigue syndrome (ME/CFS) is a debilitating multisymptom illness impacting up to 1 million people in the United States. As the pathogenesis and etiology of this complex condition are unclear, prospective treatments are limited. Identifying US Food and Drug Administration-approved drugs that may be repositioned as treatments for ME/CFS may offer a rapid and cost-effective solution.
Methods:
Here we used gene-expression data from 33 patients with Fukuda-defined ME/CFS (23 females, 10 males) and 21 healthy demographically comparable controls (15 females, 6 males) to identify differential expression of predefined gene-module sets based on nonparametric statistics. Differentially expressed gene modules were then annotated via over-representation analysis using the Consensus Pathway database. Differentially expressed modules were then regressed onto measures of fatigue and cross-referenced with drug atlas and pharmacogenomics databases to identify putative treatment agents.
Findings:
The top 1% of modules identified in males indicated small effect sizes in modules associated with immune regulation and mitochondrial dysfunction. In females, modules identified included those related to immune factors and cardiac/blood factors, returning effect sizes ranging from very small to intermediate (0.147 < Cohen δ < 0.532). Regression analysis indicated that B-cell receptors, T-cell receptors, tumor necrosis factor α, transforming growth factor β, and metabolic and cardiac modules were strongly correlated with multiple composite measures of fatigue. Cross-referencing identified genes with pharmacogenomics data indicated immunosuppressants as potential treatments of ME/CFS symptoms.
Implications:
The findings from our analysis suggest that ME/CFS symptoms are perpetuated by immune dysregulation that may be approached via immune modulation-based treatment strategies.
Insights
Myalgic encephalomyelitis/chronic fatigue syndrome (ME/CFS) research suggests immune dysregulation drives symptoms. Repurposing immunosuppressants may offer effective ME/CFS treatments by modulating immune responses.
Area of Science:
- Immunology
- Genomics
- Pharmacology
Background:
- Myalgic encephalomyelitis/chronic fatigue syndrome (ME/CFS) is a complex, debilitating illness affecting up to 1 million Americans.
- Current understanding of ME/CFS pathogenesis and etiology is limited, restricting treatment options.
- Repurposing existing FDA-approved drugs presents a rapid and cost-effective therapeutic strategy.
Purpose of the Study:
- To identify potential ME/CFS treatments by analyzing gene-expression data.
- To find FDA-approved drugs that can be repositioned for ME/CFS symptom management.
Main Methods:
- Gene-expression data from ME/CFS patients and healthy controls were analyzed using nonparametric statistics.
- Differential gene modules were identified and annotated using pathway analysis.
- Modules were regressed onto fatigue measures and cross-referenced with drug and pharmacogenomics databases.
Main Results:
- Gene expression analysis revealed immune regulation and mitochondrial dysfunction in males, and immune and cardiac factors in females.
- Fatigue measures strongly correlated with B-cell receptors, T-cell receptors, TNF-α, TGF-β, and metabolic/cardiac modules.
- Pharmacogenomic data suggested immunosuppressants as potential ME/CFS treatments.
Conclusions:
- ME/CFS symptoms appear to be driven by immune dysregulation.
- Immune modulation strategies show promise for treating ME/CFS.
- Further research into drug repositioning for ME/CFS is warranted.
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